Matei Dănuţa, Katsina Abubakar Usman, Mihai Sonia, Cursaru Diana Luciana, Şomoghi Raluca, Nistor Cristina Lavinia
Faculty of Petroleum Technology and Petrochemistry, Petroleum-Gas University of Ploiesti, 100680 Ploiești, Romania.
Department of Pure and Industrial Chemistry, Bayero University, Kano PMB 3011, Nigeria.
Polymers (Basel). 2023 Feb 27;15(5):1210. doi: 10.3390/polym15051210.
Synthetic organic pigments like xanthene and azo dyes from the direct discharge of textile effluents are considered colossal global issues and attract the concern of scholars. Photocatalysis continues to be a very valuable pollution control method for industrial wastewater. Incorporations of metal oxide catalysts such as zinc oxide (ZnO) on mesoporous Santa Barbara Armophous-15 (SBA-15) support to improve catalyst thermo-mechanical stability have been comprehensively reported. However, charge separation efficiency and light absorption of ZnO/SBA-15 continue to be limiting its photocatalytic activity. Herein, we report a successful preparation of Ruthenium-induced ZnO/SBA-15 composite via conventional incipient wetness impregnation technique with the aim of boosting the photocatalytic activity of the incorporated ZnO. Physicochemical properties of the SBA-15 support, ZnO/SBA-15, and Ru-ZnO/SBA-15 composites were characterized by X-ray diffraction (XRD), N physisorption isotherms at 77 K, Fourier-transform infrared (FTIR), scanning electron microscopy (SEM), energy dispersive X-ray (EDS), and transmission electron microscopy (TEM). The characterization outcomes exhibited that ZnO and ruthenium species have been successfully embedded into SBA-15 support, andtheSBA-15 support maintains its structured hexagonal mesoscopic ordering in both ZnO/SBA-15 and Ru-ZnO/SBA-15 composites. The photocatalytic activity of the composite was assessed through photo-assisted mineralization of aqueous MB solution, and the process was optimized for initial dye concentration and catalyst dosage. 50 mg catalyst exhibited significant degradation efficiency of 97.96% after 120 min, surpassing the efficiencies of 77% and 81% displayed by 10 and 30 mg of the as-synthesized catalyst. The photodegradation rate was found to decrease with an increase in the initial dye concentration. The superior photocatalytic activity of Ru-ZnO/SBA-15 over the binary ZnO/SBA-15 may be attributed to the slower recombination rate of photogenerated charges on the ZnO surface with the addition of ruthenium.
纺织废水直接排放的合成有机颜料如呫吨染料和偶氮染料被视为重大的全球性问题,并引起了学者们的关注。光催化仍然是一种非常有价值的工业废水污染控制方法。关于在介孔圣巴巴拉无定形-15(SBA-15)载体上负载金属氧化物催化剂(如氧化锌(ZnO))以提高催化剂热机械稳定性的研究已有全面报道。然而,ZnO/SBA-15的电荷分离效率和光吸收仍然限制着其光催化活性。在此,我们报告了通过传统的初湿浸渍技术成功制备钌诱导的ZnO/SBA-15复合材料,目的是提高负载的ZnO的光催化活性。通过X射线衍射(XRD)、77K下的N物理吸附等温线、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、能量色散X射线光谱(EDS)和透射电子显微镜(TEM)对SBA-15载体、ZnO/SBA-15和Ru-ZnO/SBA-15复合材料的物理化学性质进行了表征。表征结果表明,ZnO和钌物种已成功嵌入SBA-15载体中,并且SBA-15载体在ZnO/SBA-15和Ru-ZnO/SBA-15复合材料中均保持其结构化的六方介观有序结构。通过对甲基橙(MB)水溶液进行光辅助矿化来评估复合材料的光催化活性,并对初始染料浓度和催化剂用量进行了工艺优化。50mg催化剂在120分钟后表现出97.96%的显著降解效率,超过了10mg和30mg合成催化剂所显示的77%和81%的效率。发现光降解速率随着初始染料浓度的增加而降低。Ru-ZnO/SBA-15比二元ZnO/SBA-15具有更高的光催化活性,这可能归因于添加钌后ZnO表面光生电荷的复合速率较慢。